首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Fluorescent metallacycle-cored polymers via covalent linkage and their use as contrast agents for cell imaging
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Fluorescent metallacycle-cored polymers via covalent linkage and their use as contrast agents for cell imaging

机译:通过共价键连接的荧光金属环核聚合物及其在细胞成像中作为造影剂的用途

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摘要

The covalent linkage of supramolecular monomers provides a powerful strategy for constructing dynamic polymeric materials whose properties can be readily tuned either by the selection of monomers or the choice of functional linkers. In this strategy, the stabilities of the supramolecular monomers and the reactions used to link the monomers are crucial because such monomers are normally dynamic and can disassemble during the linking process, leading to mixture of products. Therefore, although noncovalent interactions have been widely introduced into metallacycle structures to prepare metallosupramolecular polymers, metallacycle-cored polymers linked by covalent bonds have been rarely reported. Herein, we used the mild, highly efficient amidation reaction between alkylamine and N-hydroxysuccinimide-activated carboxylic acid to link the pendent amino functional groups of a rhomboidal metallacycle 10 to give metallacycle-cored polymers P1 and P2, which further yielded nanoparticles at low concentration and transformed into network structures as the concentration increased. Moreover, these polymers exhibited enhanced emission and showed better quantum yields than metallacycle 10 in methanol and methanol/water (1/9, vol/vol) due to the aggregation-induced emission properties of a tetraphenylethene-based pyridyl donor, which serves as a precursor for metallacycle 10. The fluorescence properties of these polymers were further used in cell imaging, and they showed a significant enrichment in lung cells after i.v. injection. Considering the anticancer activity of rhomboidal Pt(II) metallacycles, this type of fluorescent metallacycle-cored polymers can have potential applications toward lung cancer treatment.
机译:超分子单体的共价键为构建动态高分子材料提供了强有力的策略,其动态特性可以通过选择单体或选择功能性连接基来轻松调节。在这种策略中,超分子单体的稳定性以及用于连接单体的反应至关重要,因为此类单体通常是动态的,并且在连接过程中会分解,导致产物混合。因此,尽管非共价相互作用已被广泛引入金属环化合物结构中以制备金属超分子聚合物,但很少有通过共价键连接的以金属环为核心的聚合物的报道。在这里,我们使用烷基胺和N-羟基琥珀酰亚胺活化的羧酸之间温和高效的酰胺化反应,将菱形金属环10的侧链氨基官能团连接起来,得到金属环带芯的聚合物P1和P2,从而进一步制备了低浓度的纳米颗粒随着浓度的增加而转变成网络结构。此外,由于四苯乙烯基吡啶基供体的聚集诱导的发射特性,这些聚合物在甲醇和甲醇/水(1/9,体积/体积)中比金属环氧化物10表现出增强的发射并显示出更好的量子产率。金属环10的前体。这些聚合物的荧光特性进一步用于细胞成像,在静脉注射后它们显示出明显富集的肺细胞注射。考虑到菱形Pt(II)金属环的抗癌活性,这种以荧光金属环为核的聚合物可以在肺癌治疗中具有潜在的应用。

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